GRID K260Q vs Radeon Pro 5600M
When choosing between GRID K260Q and Radeon Pro 5600M, it is worth examining the specifications of the models in detail. Do they meet the recommended requirements of modern games and software? Storage capacity, form factor, TDP, available ports, warranty and manufacturer support are all important. For example, the size of a PC case can limit the maximum thickness and length of the card. Often, instead of the factory overclocked card and RGB backlight, it is better to choose a reference model with a more efficient GPU. And make sure that your current power supply unit has the correct connection pins (using adapters is not recommended). This GPUs compare tool is meant to help you to choose the best graphics card for your build. Let's find out the difference between GRID K260Q and Radeon Pro 5600M.
GRID K260Q
Radeon Pro 5600M is a Laptop Graphics Card
Note: Radeon Pro 5600M is only used in laptop graphics. It has lower GPU clock speed compared to the desktop variant, which results in lower power consumption, but also 10-30% lower gaming performance. Check available laptop models with Radeon Pro 5600M here:
Main Specs
GRID K260Q | Radeon Pro 5600M | |
Power consumption (TDP) | 225 Watt | 50 Watt |
Interface | PCIe 3.0 x16 | PCIe 4.0 x16 |
Supplementary power connectors | None | |
Memory type | GDDR5 | HBM2 |
Maximum RAM amount | 2 GB | 8 GB |
Display Connectors | No outputs | No outputs |
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- GRID K260Q has 350% more power consumption, than Radeon Pro 5600M.
- GRID K260Q is connected by PCIe 3.0 x16, and Radeon Pro 5600M uses PCIe 4.0 x16 interface.
- Radeon Pro 5600M has 6 GB more memory, than GRID K260Q.
- GRID K260Q is used in Desktops, and Radeon Pro 5600M - in Mobile workstations.
- GRID K260Q is build with Kepler architecture, and Radeon Pro 5600M - with Navi / RDNA.
- GRID K260Q is manufactured by 28 nm process technology, and Radeon Pro 5600M - by 7 nm process technology.
- Memory clock speed of GRID K260Q is 3460 MHz higher, than Radeon Pro 5600M.
Game benchmarks
high / 1080p | 14−16 | 50−55 |
ultra / 1080p | 9−10 | 30−35 |
QHD / 1440p | 3−4 | 27−30 |
4K / 2160p | − | 14−16 |
low / 720p | 30−35 | 75−80 |
medium / 1080p | 18−20 | 60−65 |
The average gaming FPS of Radeon Pro 5600M in Assassin's Creed Odyssey is 233% more, than GRID K260Q. | ||
high / 1080p | 24−27 | 75−80 |
ultra / 1080p | 21−24 | 70−75 |
QHD / 1440p | 7−8 | 50−55 |
4K / 2160p | 5−6 | 27−30 |
low / 720p | 50−55 | 130−140 |
medium / 1080p | 27−30 | 85−90 |
The average gaming FPS of Radeon Pro 5600M in Battlefield 5 is 226% more, than GRID K260Q. | ||
low / 768p | 45−50 | 45−50 |
QHD / 1440p | 0−1 | 45−50 |
GRID K260Q and Radeon Pro 5600M have the same average FPS in Call of Duty: Warzone. | ||
low / 768p | 210−220 | 250−260 |
medium / 768p | 180−190 | 230−240 |
ultra / 1080p | 95−100 | − |
QHD / 1440p | 50−55 | 150−160 |
4K / 2160p | 30−33 | 100−110 |
high / 768p | 140−150 | 220−230 |
The average gaming FPS of Radeon Pro 5600M in Counter-Strike: Global Offensive is 56% more, than GRID K260Q. | ||
low / 768p | 55−60 | 70−75 |
ultra / 1080p | 40−45 | − |
medium / 1080p | 45−50 | 50−55 |
The average gaming FPS of Radeon Pro 5600M in Cyberpunk 2077 is 19% more, than GRID K260Q. | ||
low / 768p | 110−120 | 120−130 |
medium / 768p | 90−95 | 110−120 |
ultra / 1080p | 60−65 | 110−120 |
The average gaming FPS of Radeon Pro 5600M in Dota 2 is 31% more, than GRID K260Q. | ||
high / 1080p | 18−20 | 60−65 |
ultra / 1080p | 16−18 | 60−65 |
QHD / 1440p | − | 40−45 |
4K / 2160p | 6−7 | 21−24 |
low / 720p | 35−40 | 100−110 |
medium / 1080p | 18−20 | 65−70 |
The average gaming FPS of Radeon Pro 5600M in Far Cry 5 is 236% more, than GRID K260Q. | ||
high / 1080p | 24−27 | 90−95 |
ultra / 1080p | 18−20 | 70−75 |
QHD / 1440p | 16−18 | 45−50 |
4K / 2160p | − | 21−24 |
low / 720p | 95−100 | 220−230 |
medium / 1080p | 50−55 | 140−150 |
The average gaming FPS of Radeon Pro 5600M in Fortnite is 176% more, than GRID K260Q. | ||
high / 1080p | 24−27 | 85−90 |
ultra / 1080p | 20−22 | 65−70 |
QHD / 1440p | 9−10 | 45−50 |
4K / 2160p | − | 30−35 |
low / 720p | 50−55 | 130−140 |
medium / 1080p | 27−30 | 90−95 |
The average gaming FPS of Radeon Pro 5600M in Forza Horizon 4 is 218% more, than GRID K260Q. | ||
low / 768p | 85−90 | 160−170 |
medium / 768p | 75−80 | 150−160 |
high / 1080p | 30−33 | 95−100 |
ultra / 1080p | 12−14 | 45−50 |
QHD / 1440p | 3−4 | 40−45 |
The average gaming FPS of Radeon Pro 5600M in Grand Theft Auto V is 140% more, than GRID K260Q. | ||
high / 1080p | 9−10 | 35−40 |
ultra / 1080p | 7−8 | 30−35 |
QHD / 1440p | − | 24−27 |
4K / 2160p | 2−3 | 14−16 |
low / 720p | 27−30 | 90−95 |
medium / 1080p | 12−14 | 50−55 |
The average gaming FPS of Radeon Pro 5600M in Metro Exodus is 283% more, than GRID K260Q. | ||
low / 768p | 110−120 | 120−130 |
ultra / 1080p | 100−110 | − |
medium / 1080p | 100−110 | − |
The average gaming FPS of Radeon Pro 5600M in Minecraft is 8% more, than GRID K260Q. | ||
high / 1080p | 21−24 | 75−80 |
ultra / 1080p | 18−20 | 55−60 |
4K / 2160p | − | 18−20 |
low / 720p | 55−60 | 120−130 |
medium / 1080p | 24−27 | 85−90 |
The average gaming FPS of Radeon Pro 5600M in PLAYERUNKNOWN'S BATTLEGROUNDS is 177% more, than GRID K260Q. | ||
high / 1080p | 14−16 | 35−40 |
ultra / 1080p | 9−10 | 21−24 |
QHD / 1440p | 0−1 | 16−18 |
4K / 2160p | − | 10−12 |
low / 720p | 27−30 | 90−95 |
medium / 1080p | 16−18 | 55−60 |
The average gaming FPS of Radeon Pro 5600M in Red Dead Redemption 2 is 205% more, than GRID K260Q. | ||
low / 768p | 55−60 | 180−190 |
medium / 768p | 30−35 | 120−130 |
high / 1080p | 18−20 | 70−75 |
ultra / 1080p | 10−12 | 40−45 |
4K / 2160p | 8−9 | 24−27 |
The average gaming FPS of Radeon Pro 5600M in The Witcher 3: Wild Hunt is 260% more, than GRID K260Q. | ||
low / 768p | 100−110 | 120−130 |
medium / 768p | 60−65 | − |
ultra / 1080p | 35−40 | 65−70 |
high / 768p | 50−55 | − |
The average gaming FPS of Radeon Pro 5600M in World of Tanks is 35% more, than GRID K260Q. |
Full Specs
GRID K260Q | Radeon Pro 5600M | |
Architecture | Kepler | Navi / RDNA |
Code name | GK104 | Navi 10 |
Type | Workstation | Mobile workstation |
Release date | 28 June 2013 | 15 June 2020 |
Pipelines | 1536 | 2560 |
Core clock speed | 745 MHz | |
Boost Clock | 1265 MHz | |
Transistor count | 3,540 million | |
Manufacturing process technology | 28 nm | 7 nm |
Texture fill rate | 95.36 | 164.8 |
Floating-point performance | 2,289 gflops | |
Memory bus width | 256 Bit | 2048 Bit |
Memory clock speed | 5000 MHz | 1540 MBps |
Memory bandwidth | 160.0 GB/s | 394.2 GB/s |
Shared memory | - | |
DirectX | 12 (11_0) | 12 (12_1) |
Shader Model | 5.1 | 6.5 |
OpenGL | 4.6 | 4.6 |
OpenCL | 1.2 | 2.0 |
Vulkan | 1.1.126 | 1.2 |
CUDA | 3.0 | |
Laptop size | medium sized | |
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